Abstract
Abstract
The Baltic Sea is suffering from eutrophication caused by nutrient discharges from land to sea, and these loads might change in a changing climate. We show that the impact from climate change by mid-century is probably less than the direct impact of changing socioeconomic factors such as land use, agricultural practices, atmospheric deposition, and wastewater emissions. We compare results from dynamic modelling of nutrient loads to the Baltic Sea under projections of climate change and scenarios for shared socioeconomic pathways. Average nutrient loads are projected to increase by 8% and 14% for nitrogen and phosphorus, respectively, in response to climate change scenarios. In contrast, changes in the socioeconomic drivers can lead to a decrease of 13% and 6% or an increase of 11% and 9% in nitrogen and phosphorus loads, respectively, depending on the pathway. This indicates that policy decisions still play a major role in climate adaptation and in managing eutrophication in the Baltic Sea region.
Publisher
Springer Science and Business Media LLC
Subject
Ecology,Environmental Chemistry,Geography, Planning and Development,General Medicine
Reference42 articles.
1. Andersen, H.E., G. Blicher-Mathiesen, H. Thodsen, P.M. Andersen, S.E. Larsen, P. Stålnacke, C. Humborg, C.M. Mörth, et al. 2016. Identifying hot spots of agricultural nitrogen loss within the Baltic Sea Drainage Basin. Water Air Soil Pollution 227: 38.
2. Andersson, L., and B. Arheimer. 2003. Modelling of human and climatic impact on nitrogen load in a Swedish river 1885-1994. Hydrobiologia 497: 63–77.
3. Arheimer, B., J. Dahné, and C. Donnelly. 2012. Climate change impact on riverine nutrient load and land-based remedial measures of the Baltic Sea Action Plan. Ambio 41: 600–612.
https://doi.org/10.1007/s13280-012-0323-0
.
4. Arheimer, B., J. Andréasson, S. Fogelberg, H. Johnsson, C.B. Pers, and K. Persson. 2005. Climate change impact on water quality: Model results from southern Sweden. Ambio 34: 559–566.
https://doi.org/10.1579/0044-7447-34.7.559
.
5. Bartosova, A., C. Donelly, J. Strömqvist, R. Capell, and J. Tengdelius-Brunell. 2017. HYPE model for the Baltic Sea Basin. BONUS Soils2Sea Deliverable 5.1. Swedish Meteorological and Hydrological Institute, Norrköping, May 2017.
www.Soils2Sea.eu
.
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